A saddle-type vehicle equipped with an airbag apparatus in which an increase in the number of component parts can be restrained. A motorcycle is a vehicle in which seat rails are included in a rear portion of a body frame with a rider seat having a front end portion upwardly inclined towards the front side of the vehicle that is mounted on the seat rails. An airbag module accommodating an airbag therein and fixed by an airbag mounting stay extending upwardly from the body frame and is disposed on the front side of the rider seat. A seat hook for holding the front end portion of the rider seat extends from the airbag module or from the airbag mounting stay.
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1. A saddle vehicle, comprising:
a body frame including seat rails in a rear portion thereof;
a rider seat mounted on the seat rails, the rider seat having a front end portion upwardly inclined toward a front side of the vehicle;
an airbag module accommodating an airbag therein, the airbag module being disposed adjacent to the front end portion of the rider seat and fixed by an airbag mounting stay extending upwardly from the body frame; and
a cowl mounting stay to which a cowl for covering the body frame is mounted, the cowl mounting stay being directly mounted on the airbag mounting stay,
wherein a seat hook for holding the front end portion of the rider seat extends from the airbag mounting stay.
2. The saddle vehicle according to
3. The saddle vehicle according to
4. The saddle vehicle according to
5. The saddle vehicle according to
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This application is a divisional of application Ser. No. 12/766,690, filed on Apr. 23, 2010 now U.S. Pat. No. 8,424,902, the entire contents incorporated herein by reference and for which priority is claimed under 35 U.S.C. §120.
The present application claims priority under 35 USC 119 to Japanese Patent Application No. 2009-109220 filed on Apr. 28, 2009 the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to an improvement in a saddle-type vehicle equipped with an airbag apparatus.
2. Description of Background Art
A saddle-type vehicle equipped with an airbag apparatus is known wherein the airbag apparatus is positioned on the front side of a rider seat on which a rider or riders are to be seated. See, for example, Japanese Patent No. 3685872 (FIG. 3).
In FIG. 3 of Japanese Patent No. 3685872, a fuel tank 4 (the same reference symbols as those in the document are used here) is disposed at a front portion of a body frame 1 with a seat 5 being provided at a rear portion of the body frame 1 and an airbag module M is disposed at a position which is between the fuel tank 4 and the seat 5 (hereinafter referred to as “rider seat”) which is proximate to the upper surface of the body frame 1. The airbag module M is mounted to the body frame 1 through a mounting stay 10 and a mounting piece 11.
In Japanese Patent No. 3685872, at the time of mounting to the body frame 1 the rider seat whose front end portion is upwardly inclined toward the front side of the vehicle, an independent support member may be additionally provided for supporting the front end portion of the rider seat. In such a case, it is necessary to provide the body frame with the support member for supporting the front end portion of the rider seat, leading to an increase in the number of component parts.
It is an object of an embodiment of the present invention to provide a saddle-type vehicle equipped with an airbag apparatus in which an increase in the number of component parts can be restrained.
According to an embodiment of the present invention, a saddle-type vehicle is provided that includes a body frame including seat rails in a rear portion thereof, a rider seat mounted on the seat rails with the rider seat having a front end portion upwardly inclined toward the front side of the vehicle. An airbag module accommodates an airbag therein with the airbag module being disposed on the front side of the rider seat and fixed by an airbag mounting stay extending upward from the body frame. A seat hook for holding the front end portion of the rider seat extends from the airbag module.
According to an embodiment of the present invention, in a saddle-type vehicle includes a body frame including seat rails in a rear portion thereof with a rider seat mounted on the seat rails. The rider seat has a front end portion upwardly inclined toward the front side of the vehicle, and an airbag module accommodating an airbag therein, the airbag module being disposed on the front side of the rider seat and fixed by an airbag mounting stay extending upward from the body frame. A seat hook for holding the front end portion of the rider seat extends from the airbag mounting stay.
According to an embodiment of the present invention, a fuel tank is disposed in a space ranging from the lower side of the airbag module to the lower side of the front end portion of the rider seat.
According to an embodiment of the present invention, at least one of the airbag module and the airbag mounting stay is provided with a cowl mounting stay to which a cowl for covering the body frame is mounted.
According to an embodiment of the present invention, at least one of the airbag module and the airbag mounting stay is provided with a pipe support part for supporting a fuel pipe.
According to an embodiment of the present invention, a pair of left and right main frames extend rearwardly from a head pipe with an upper surface of the fuel tank being disposed between the left and right main frames and being so formed as to be located above the left and right main frames. The airbag mounting stay extends from the left and right main frames to above the upper surface of the fuel tank.
According to an embodiment of the present invention, a seat hook for holding a front end portion of the rider seat extends from the airbag module. Since the rider seat having the front end portion upwardly inclined toward the front side of the vehicle can be held by the airbag module, an increase in the number of component parts can be restrained. With an increase in the number of component parts being restrained, the vehicle body can be simplified in structure.
According to an embodiment of the present invention, a seat hook for holding a front end portion of the rider seat extends from an airbag mounting stay. Since the rider seat can be held by the airbag mounting stay, an increase in the number of component parts can be restrained. With an increase in the number of component parts restrained, the vehicle body can be simplified in structure.
According to an embodiment of the present invention, the fuel tank is disposed in a space ranging from the lower side of the airbag module to the lower side of the front end portion of the rider seat. Even if other member than the body frame is disposed on the lower side of the airbag module and on the lower side of the rider seat, the airbag module and the rider seat can be supported.
According to an embodiment of the present invention, at least one of the airbag module and the airbag mounting stay is provided with a cowl mounting stay, so that not only the rider seat but also the cowl can be mounted to the airbag module and/or the airbag mounting stay. Accordingly, the number of component parts can be reduced, and the vehicle body can be simplified in structure.
According to an embodiment of the present invention, at least one of the airbag module and the airbag mounting stay is provided with a pipe support part, so that not only the rider seat but also a fuel pipe can be mounted. Accordingly, the number of component parts can be reduced, and the vehicle body can be simplified in structure.
According to an embodiment of the present invention, the upper surface of the fuel tank is formed so as to be located above a pair of left and right main frames, and the airbag mounting stay extends from the left and right main frames to above the upper surface of the fuel tank. With such an airbag mounting stay, it is possible to dispose the airbag module in an optimum position, for example, to dispose the airbag module close to the rider.
Further scope of applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
Embodiments of the present invention will be described in detail below. In the drawings and the embodiments, the directions “up,” “down,” “front,” “rear,” “left,” and “right” refer to the directions as viewed from a driver seated on the motorcycle. In addition, the drawings are to be viewed according to the posture of reference symbols.
As illustrated in
The body frame 12 includes, as major components, a pair of main frames 15L and 15R (only reference symbol 15L on the viewer's side is shown) extend rearwardly from the head pipe 11 which constitutes a front portion of a vehicle body 14 with a pair of left and right pivot plates 17L and 17R (only reference symbol 17L on the viewer's side is shown) mounted to rear end portions of the main frames 15L and 15R and having a pivot shaft 16. A pair of left and right seat rails 18L and 18R (only reference symbol 18L on the viewer's side is shown) rise rearwardly and upwardly from upper portions of the pivot plates 17L and 17R and then extend rearwardly. A pair of left and right middle frames 19L and 19R (only reference symbol 19L on the viewer's side is shown) interconnect rear end portions of the seat rails 18L and 18R and intermediate portions of the pivot plates 17L and 17R and support the seat rails 18L and 18R. In short, the seat rails 18L and 18R are included in a rear portion of the body frame 12.
A pair of left and right sub-rails 21L and 21R (only reference 21L on the viewer's side is shown) extend rearwardly from upper end portions of the middle frames 19L and 19R. A pair of left and right seat stays 22L and 22R interconnect rear portions of the sub-rails 21L and 21R and the middle frames 19L and 19R, respectively. A pair of left and right auxiliary stays 23L and 23R (only reference symbol 23L on the viewer's side is shown) extend rearwardly and downwardly from rear portions of the sub-rails 21L and 21R and then extend horizontally toward the front side.
A trunk 27 for accommodating objects therein is mounted to the sub-rails 21L and 21R, and a back rest 28 for holding the rider's back is mounted to a front wall 27a of the trunk 27.
An engine 32 is suspended under the main frames 15L and 15R through fastening members 31a to 31c. The engine 32 is a horizontally opposed six-cylinder water-cooled engine.
A pair of left and right rear swing arms 34L and 34R (only reference symbol 34L on the viewer's side is shown) which can be vertically swung about the pivot shaft 16 are mounted to the pivot plates 17L and 17R. A rear wheel 36 is rotatably mounted to rear end portions of the rear swing arms 34L and 34R through a rear axle 35. The rear wheel 36 is driven by a chain 42 which is wrapped around a drive sprocket 38 attached to a drive shaft 37 of the engine 32 and a driven sprocket 41 formed to be integral with the rear wheel 36.
A rear shock absorber 48 is risingly mounted to intermediate portions of the rear swing arms 34L and 34R through a link mechanism 47. An upper end portion of the rear shock absorber 48 is mounted to a bracket 49 formed on the side of the main frames 15L and 15R.
A front fork 52 is steerably mounted to the head pipe 11. A front wheel 54 is mounted to the front fork 52 through a front axle 53. A steering handle 55 is attached to an upper end portion of the front fork 52. The head pipe 11 is a member for turnably supporting the steering handle 55.
An opening part 57 is formed on a lateral side of front portions of the main frames 15L and 15R and on a lateral side of a main cowl 56. A radiator unit 58 for cooling the engine 32 is disposed so as to face the opening part 57.
In
The rider seat 71 on which the riders are to be seated is provided on the seat rails 18L and 18R. The rider seat 71 has a structure in which a resin-made front seat 72 permits the rider to be seated thereon and a rear seat 73 is provided in continuity with a rear portion of the front seat 72 that are integrally disposed on the upper side of a seat bottom plate.
In
An airbag module 82 is mounted to the main frames 15L and 15R through an airbag mounting stay 81. A seat hook 84 for holding a front end portion 83 of the bottom plate of the rider seat 71 extends rearwardly from the airbag module 82. In other words, the airbag module 82 is fixed to the airbag mounting stay 81 provided as a stay extending upwardly from the body frame 12.
The airbag module 82 is one of components of an airbag apparatus 86. The airbag apparatus 86 includes, as major components, the airbag module 82, and an airbag control unit 87 for controlling the deployment of an airbag (reference symbol 101 in
Summing up the foregoing, the rider seat 71 is mounted on and attached to the seat rails 18L and 18R in the condition in which the front end portion 83 of the seat bottom plate is upwardly inclined toward the front side of the vehicle. The airbag module 82 is disposed on the front side of the rider seat 71.
Referring to
In
Since the airbag control unit 87 is disposed along a lateral side of the fuel tank 93, the increase in the vehicle width due to the arrangement of the airbag control unit 87 can be minimized.
In addition, since the airbag control unit 87 is disposed on the inner side in the vehicle width direction relative to the left and right main frames 15L and 15R, the shape of the cowl (reference symbol 106 in
In
The airbag module 82 has a holding box 98 as a casing. The holding box 98 is composed of a bottom plate 102, side plates 105 provided erectly on the bottom plate 102, and a lid 104 for covering the upper side of the side plates 105.
The bottom plate 102 of the holding box 98 is provided with opening parts 100L and 100R, and the inflators 95 and 96 arranged in parallel on the left and right sides are provided so as to penetrate the opening parts 100L and 100R, respectively.
In addition, while the two inflators 95 and 96 are arranged in parallel on the left and right sides, the number of the inflators may be arbitrary, and the inflators may be arranged in parallel on the front and rear sides. Thus, the arrangement of the inflators is not limited to the form of layout according to this embodiment.
Now, the layout of the airbag control unit 87 will be described below.
In
In addition, the airbag control unit may be disposed at a position deviated to the right side from the center line passing through the center of the vehicle width.
The airbag control unit 87 is a member having a box-like shape of which the length (L) along the longitudinal direction of the vehicle is greater than the width (W) along the vehicle width direction, and the height (T) along the vehicle height direction is greater than the width (W) along the vehicle width direction.
Thus, the airbag control unit 87 is a box-like member having a width (W) which is smaller than each of the length (L) and the height (T). Since the airbag control unit 87 having the width (W) smaller than each of the length (L) and the height (T) is disposed along the vehicle width direction, an increase of the vehicle size in the vehicle width direction can be restrained.
Now, the layout of the fuel tank will be described below.
The fuel tank 93 is disposed in a space ranging from the lower side of the airbag module 82 to the lower side of the front end portion 83 of the rider seat 71. Such a layout of the fuel tank 93 ensures that the airbag module 82 and the rider seat 71 can be supported, even in the case where other member than the body frame 12 is disposed on the lower side of the airbag module 82 and the lower side of the rider seat 71.
In
The seat hook 84 has a U-shaped part 112 which is substantially U-shaped in a plan view. A holding piece 113 extends downwardly from the front end portion 83 of the rider seat bottom plate and then extends rearwardly and is hooked on the U-shaped part 112 from above, the front end portion 83 of the rider seat bottom plate is held onto the seat hook 84.
Further, the holding box 98 of the airbag module 82 is provided with a pipe support part 116. Since the pipe support part 116 is thus provided, not only the rider seat 71 but also a fuel pipe 118 can be mounted to the airbag module 82.
In addition, the pipe support part is not limited to the one for supporting the fuel pipe; for example, the pipe support part may be one for supporting cables such as harnesses.
Since the airbag module 82 is provided with the seat hook 84, the cowl mounting stays 107L and 107R, and the pipe support part 116, it is possible to reduce the number of component parts and to make the vehicle body simple in structure.
In addition, the pipe support part 116 may be provided in the airbag mounting stay 81.
Referring to
In
Summing up the foregoing, the airbag module 82 is provided with the cowl mounting stays 107L and 107R for the cowl 106 for covering the body frame 12, so that not only the rider seat 71 but also the cowl 106 can be mounted. Accordingly, the number of component parts can be reduced, and the vehicle body can be simplified in structure.
In addition, the airbag mounting stay 81 may be provided with the cowl mounting stays 107L and 107R. Further, both the airbag module 82 and the airbag mounting stay 81 may be provided with the cowl mounting stays 107L, 107R.
In
Thus, the airbag apparatus 86 has the airbag control unit 87 for controlling the deployment of the airbag 101. The wiring 122 for transmitting the deployment control signal for the airbag 101 is provided between the airbag control unit 87 and the inflators 95, 96.
The wiring 122 for interconnecting the airbag control unit 87 and the airbag module 82 extends from the front portion 135 of the airbag control unit 87, and is passed on a lateral side of the airbag module 82, to be connected to the airbag module 82. According to such a laying of wiring, a worker can easily carry out wiring works by putting a hand or hands into a required site from a lateral side of the airbag module 82. Accordingly, workability relating to wiring can be enhanced.
Now, the operation of the above-mentioned saddle-type vehicle will be described below.
In
If the airbag control unit 87 is disposed, for example, on the left side of the airbag module 82 in the case where the space between the left and right main frames 15L and 15R is set to be narrow, there is a possibility that the airbag control unit 87 may protrude to the outside of the left main frame 15L, resulting in an enlargement of the vehicle width.
In this connection, according to the present invention, the airbag control unit 87 is disposed between the head pipe 11 and the airbag module 82.
Where the airbag control unit 87 is thus disposed between the head pipe 11 and the airbag module 82, the vehicle width can be restrained from being enlarged. In this case, the lateral side of the air bag module 82 and the lateral side of the airbag control unit 87 are both in an area 160 of contact by the knee K of the driver D. With the vehicle width restrained from being enlarged in this area 160, gripping of the vehicle body by the knees K of the driver D can be performed easily.
In
Referring to
In addition to this, the fuel tank 93 is disposed in a space ranging from the lower side to the front side of the airbag module 82; a front portion of the fuel tank 93 is bulged to the upper side on the front side of the airbag module 82 and is provided with an oil filler port 90; and the airbag control unit 87 is disposed on a lateral side of the oil filler port 90. Consequently, the airbag module 82, the fuel tank 93, the oil filler port 90 and the airbag control unit 87 can be disposed in a limited space on the front side of the rider seat 71, so that an effective utilization of space is achieved. In addition, even with such a layout, a reduction in the capacity of the fuel tank 93 can be obviated.
In
In
In
In
In
Since the wiring 122B for interconnecting the airbag control unit 87 and the airbag module 82 extends from the rear portion 137 of the airbag control unit 87 and is connected to the airbag module 82, the wiring 122B can be laid to extend to the airbag module 82 through a shortest distance.
In addition, while the present invention is applied to a saddle-type vehicle in the embodiments above, the invention can be applied also to three-wheel vehicles, and may be applied to general vehicles.
The present invention is preferable for application to a motorcycle equipped with an airbag apparatus.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
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